A tissue-engineered model of the blood-tumor barrier during metastatic breast cancer

被引:0
|
作者
Raleigh M. Linville
Joanna Maressa
Zhaobin Guo
Tracy D. Chung
Alanna Farrell
Ria Jha
Peter C. Searson
机构
[1] Johns Hopkins University,Institute for Nanobiotechnology
[2] Johns Hopkins University,Department of Biomedical Engineering
[3] Johns Hopkins University,Department of Materials Science and Engineering
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Metastatic brain cancer has poor prognosis due to challenges in both detection and treatment. One contributor to poor prognosis is the blood–brain barrier (BBB), which severely limits the transport of therapeutic agents to intracranial tumors. During the development of brain metastases from primary breast cancer, the BBB is modified and is termed the ‘blood-tumor barrier’ (BTB). A better understanding of the differences between the BBB and BTB across cancer types and stages may assist in identifying new therapeutic targets. Here, we utilize a tissue-engineered microvessel model with induced pluripotent stem cell (iPSC)-derived brain microvascular endothelial-like cells (iBMECs) and surrounded by human breast metastatic cancer spheroids with brain tropism. We directly compare BBB and BTB in vitro microvessels to unravel both physical and chemical interactions occurring during perivascular cancer growth. We determine the dynamics of vascular co-option by cancer cells, modes of vascular degeneration, and quantify the endothelial barrier to antibody transport. Additionally, using bulk RNA sequencing, ELISA of microvessel perfusates, and related functional assays, we probe early brain endothelial changes in the presence of cancer cells. We find that immune cell adhesion and endothelial turnover are elevated within the metastatic BTB, and that macrophages exert a unique influence on BTB identity. Our model provides a novel three-dimensional system to study mechanisms of cancer-vascular-immune interactions and drug delivery occurring within the BTB.
引用
收藏
相关论文
共 50 条
  • [31] In Vivo Characterization of Changing Blood-Tumor Barrier Permeability in a Mouse Model of Breast Cancer Metastasis A Complementary Magnetic Resonance Imaging Approach
    Percy, Dean B.
    Ribot, Emeline J.
    Chen, Yuhua
    McFadden, Catherine
    Simedrea, Carmen
    Steeg, Patricia S.
    Chambers, Ann F.
    Foster, Paula J.
    INVESTIGATIVE RADIOLOGY, 2011, 46 (11) : 718 - 725
  • [32] Radiation-induced blood-tumor barrier permeability in a preclinical model of lung cancer brain metastasis
    Sprowls, Samuel A.
    Shah, Neal
    Mohammad, Afroz S.
    Pinti, Marc
    Tallman, Rachel M.
    John, Devin U.
    Lockman, Paul R.
    CANCER RESEARCH, 2018, 78 (13)
  • [33] The effect of thermal therapy on the blood-brain barrier and blood-tumor barrier
    Patel, Bhuvic
    Yang, Peter H.
    Kim, Albert H.
    INTERNATIONAL JOURNAL OF HYPERTHERMIA, 2020, 37 (02) : 35 - 43
  • [34] Laser Therapy Enhances Blood-Brain Barrier and Blood-Tumor Barrier Permeability in a Mouse Model of Glioblastoma
    Salehi, Afshin
    Paturu, Mounica
    Caine, Matthew
    Klein, Robyn
    Kim, Albert H.
    NEUROSURGERY, 2019, 66 : 135 - 135
  • [35] A Tissue-Engineered Model of the Placental Barrier to Investigate Materno-Fetal Transport
    Arumugasaamy, N.
    Kuo, C.
    Placone, J. K.
    Ettehadieh, L. E.
    Fernandes, R.
    Kim, P. C.
    Fisher, J. P.
    TISSUE ENGINEERING PART A, 2016, 22 : S23 - S23
  • [36] Effect of intracarotid infusion of etoposide: Modification of the permeability of the blood-brain barrier and the blood-tumor barrier in rat brain tumor model
    Maeda, Y
    Matsumoto, K
    Mizumatsu, S
    Tamiya, T
    Furuta, T
    Ohmoto, T
    ACTA MEDICA OKAYAMA, 1999, 53 (01) : 5 - 11
  • [37] Allogeneic human tissue-engineered blood vessel
    Quint, Clay
    Arief, Melissa
    Muto, Akihito
    Dardik, Alan
    Niklason, Laura E.
    JOURNAL OF VASCULAR SURGERY, 2012, 55 (03) : 790 - 798
  • [38] A novel tissue-engineered 3D tumor model for anti-cancer drug discovery
    Li, Wenfang
    Hu, Xueyan
    Yang, Shuaitao
    Wang, Shuping
    Zhang, Chenghong
    Wang, Hai
    Cheng, Yuen Yee
    Wang, Yiwei
    Liu, Tianqing
    Song, Kedong
    BIOFABRICATION, 2019, 11 (01)
  • [39] Gene therapy in tissue-engineered blood vessels
    Fields, RC
    Solan, A
    McDonagh, KT
    Niklason, LE
    Lawson, JH
    TISSUE ENGINEERING, 2003, 9 (06): : 1281 - 1287
  • [40] Ibrutinib disrupts blood-tumor barrier integrity and prolongs survival in rodent glioma model
    Lim, Sanghee
    Kwak, Minhye
    Kang, Jeonghan
    Cesaire, Melissa
    Tang, Kayen
    Robey, Robert W.
    Frye, William J. E.
    Karim, Baktiar
    Butcher, Donna
    Lizak, Martin J.
    Dalmage, Mahalia
    Foster, Brandon
    Nuechterlein, Nicholas
    Eberhart, Charles
    Cimino, Patrick J.
    Gottesman, Michael M.
    Jackson, Sadhana
    ACTA NEUROPATHOLOGICA COMMUNICATIONS, 2024, 12 (01) : 56